Xie Dan, Chen Ye, Yu Junwen, Yang Zhuangzhuang, Wang Xiaosan, Wang Xingguo
College of Biology and Food Engineering, Anhui Polytechnic University, Wuhu, Anhui, PR China.
Collaborative Innovation Center of Food Safety and Quality Control in Jiangsu Province, National Engineering Research Center for Functional Food, School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, PR China.
Crit Rev Food Sci Nutr. 2023;63(32):11310-11326. doi: 10.1080/10408398.2022.2086852. Epub 2022 Jun 14.
n-3 Polyunsaturated fatty acids (n-3 PUFA) has been widely used in foods, and pharmaceutical products due to its beneficial effects. The content of n-3 PUFA in natural oils is usually low, which decreases its added value. Thus, there is an increasing demand on the market for n-3 PUFA concentrates. This review firstly introduces the differences in bioavailability and oxidative stability between different types of PUFA concentrate (free fatty acid, ethyl ester and acylglycerol), and then provides a comprehensive discussion of different methods for enrichment of lipids with n-3 PUFA including physical-chemical methods and enzymatic methods. Lipases used for catalyzing esterification, transesterification and hydrolysis reactions play an important role in the production of highly enriched various types of n-3 PUFA concentrates. Lipase-catalyzed alcoholysis or hydrolysis reactions are the mostly employed method to prepare high-quality n-3 PUFA of structural acylglycerols. Although many important advantages offered by lipases in enrichment of n-3 PUFA, the high cost of enzyme limits its industrial-scale production. Further research should focus on looking for biological enzymes with extraordinary catalytic ability and clear selectivity. Other novel technologies such as protein engineering and immobilization may be needed to modify lipases to improve its selectivity, catalytic ability and reuse.
n-3多不饱和脂肪酸(n-3 PUFA)因其有益作用已广泛应用于食品和药品中。天然油脂中n-3 PUFA的含量通常较低,这降低了其附加值。因此,市场对n-3 PUFA浓缩物的需求日益增加。本综述首先介绍了不同类型PUFA浓缩物(游离脂肪酸、乙酯和酰基甘油)在生物利用度和氧化稳定性方面的差异,然后全面讨论了用n-3 PUFA富集脂质的不同方法,包括物理化学方法和酶法。用于催化酯化、酯交换和水解反应的脂肪酶在生产高度富集的各种类型n-3 PUFA浓缩物中起着重要作用。脂肪酶催化的醇解或水解反应是制备高质量结构酰基甘油型n-3 PUFA最常用的方法。尽管脂肪酶在富集n-3 PUFA方面具有许多重要优势,但酶的高成本限制了其工业化规模生产。进一步的研究应集中在寻找具有非凡催化能力和明确选择性的生物酶。可能需要其他新技术,如蛋白质工程和固定化技术来改造脂肪酶,以提高其选择性、催化能力和重复使用性。